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Structural insights into functional overlapping and differentiation among myosin V motors.

Abstract:
Myosin V (MyoV) motors have been implicated in the intracellular transport of diverse cargoes including vesicles, organelles, RNA-protein complexes, and regulatory proteins. Here, we have solved the cargo-binding domain (CBD) structures of the three human MyoV paralogs (Va, Vb, and Vc), revealing subtle structural changes that drive functional differentiation and a novel redox mechanism controlling the CBD dimerization process, which is unique for the MyoVc subclass. Moreover, the cargo- and motor-binding sites were structurally assigned, indicating the conservation of residues involved in the recognition of adaptors for peroxisome transport and providing high resolution insights into motor domain inhibition by CBD. These results contribute to understanding the structural requirements for cargo transport, autoinhibition, and regulatory mechanisms in myosin V motors.
Publication status:
Published

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Publisher copy:
10.1074/jbc.m113.507202

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Journal:
Journal of biological chemistry More from this journal
Volume:
288
Issue:
47
Pages:
34131-34145
Publication date:
2013-11-01
DOI:
EISSN:
1083-351X
ISSN:
0021-9258


Language:
English
Keywords:
Pubs id:
pubs:434346
UUID:
uuid:e86491a4-14ea-4a46-88bc-08c19e887324
Local pid:
pubs:434346
Source identifiers:
434346
Deposit date:
2013-11-17
ARK identifier:

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